低trl电流变流器综合评估工具

Dominic Forbush, Jonathan Colby, Nicole Mendoza
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摘要

随着具有市场竞争力的能源成本,当前的能源转换器技术从设计过程早期广泛考虑社会经济、环境和监管因素中受益匪浅。作为技术性能水平评估的一部分,开发并提出了一系列评估问题和指南,以考虑整个设备生命周期的整体标准来评估早期的当前能源技术。该评估代表了迄今为止行业和研究经验的积累,并依赖于定期更新,以确保与行业最佳实践、监管要求和最新的技术理解保持一致。从摇篮到坟墓(材料、制造、安装和部署、操作和维护,以及生命周期结束)对能力和功能需求的评估% MA——目前在PBE团队中调用功能需求工程规范,不确定我们是否应该现在开始使用“工程规范”,并且考虑到潜在的合同文件,与我们的语言保持一致。如果我解释错了,请忽略我。潮汐、河流和洋流技术已经完成。这项工作提出了评估问题和定性%(即。用于潮汐、洋流和/或河流应用的电流转换器的高、中、低性能标准。与制造和安装相关的关键考虑因素包括供应链的稳健性、可制造性和最终用户和/或邻近社区的相关就业机会创造,以及隐含能源债务的偿还时间。在部署和维护作业期间,设备和子系统在断开连接或电网故障期间的安全性、海上重型起重活动的难度和频率、避免或减轻区域使用冲突、允许进行维护的海况和天气条件,以及应急计划的可用性(如果条件发生意外变化)是考虑的评估标准的一部分。结果包括早期阶段设计决策对技术的社会经济、环境和监管性能的潜在影响,这些决策允许开发人员增加产品价值和成功的可能性,并通过早期和广泛考虑影响整体性能和可接受性的因素,将昂贵的后期设计迭代最小化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
comprehensive assessment tool for low-TRL current energy converters
Along with a market-competitive levelized cost of energy, a current energy converter technology strongly benefits from an extensive consideration of socioeconomic, environmental, and regulatory factors early in the design process. As part of a technology performance level assessment, a series of assessment questions and guidance are developed and presented to evaluate an early-stage current energy technology on holistic criteria considering the entire device lifecycle. The assessment represents an accumulation of industry and research experience to date and relies on regular updates to ensure alignment with industry best-practices, regulatory requirements, and up-to-date technical understanding. A cradle-to-grave (materials, manufacturing, installation and deployment, operations and maintenance, and end-of-life) assessment of capabilities and functional requirements % MA- currently calling functional requirements engineering specifications within the PBE team, not sure if we should start using "engineering specifications now and be consitent with our language considering the potential desal paper. If I'm interpretting this incorrectly pls ignore me.for tidal, river, and ocean current technologies has been completed. This work presents the evaluation questions and qualitative %(i.e., high, medium, and low)performance criteria for current energy converters deployed in tidal, ocean current, and/or river applications. Key considerations related to manufacturing and installation include supply chain robustness, manufacturability and related job creation in the end-user and/or adjacent communities, and the time-to-repayment of the embodied energy debt. During deployment and maintenance operations, the safety of the device and subsystems during disconnect or grid failure, the difficulty and frequency of offshore heavy-lift activities, the avoidance or mitigation of area-use conflicts, the sea-states and weather conditions that permit maintenance access, and the availability of contingency plans (should conditions change unexpectedly) are a portion of the considered assessment criteria. Results include the potential impact of early-stage design decisions on the socioeconomic, environmental, and regulatory performance of a technology that allows developers to increase the product value and probability of success, and minimize costly late-stage design iterations through early and broad consideration of factors affecting overall performance and acceptability.
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